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首页> 外文期刊>Molecular Metabolism >Mitochondrial fission is associated with UCP1 activity in human brite/beige adipocytes
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Mitochondrial fission is associated with UCP1 activity in human brite/beige adipocytes

机译:线粒体裂变与人血/米色脂肪细胞中的UCP1活性有关

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Objective Thermogenic adipocytes ( i.e. brown or brite/beige adipocytes) are able to burn large amounts of lipids and carbohydrates as a result of highly active mitochondria and enhanced uncoupled respiration, due to UCP1 activity. Although mitochondria are the key organelles for this thermogenic function, limited human data are available. Methods/results We characterized changes in the mitochondrial function of human brite adipocytes, using hMADS cells as a model of white- to brite-adipocyte conversion. We found that profound molecular modifications were associated with morphological changes in mitochondria. The fission process was partly driven by the DRP1 protein, which also promoted mitochondrial uncoupling. Conclusion Our data demonstrate that white-to-brite conversion of human adipocytes relies on molecular, morphological and functional changes in mitochondria, which enable brite/beige cells to carry out thermogenesis.
机译:目的由于UCP1活性,线粒体高度活跃并增强了非耦合呼吸作用,致热脂肪细胞(即棕色或棕色/米色脂肪细胞)能够燃烧大量的脂质和碳水化合物。尽管线粒体是这种生热功能的关键细胞器,但可获得的人类数据有限。方法/结果我们使用hMADS细胞作为白细胞到脂肪细胞转化的模型,表征了人类Brit脂肪细胞的线粒体功能的变化。我们发现,深刻的分子修饰与线粒体的形态变化有关。裂变过程部分是由DRP1蛋白驱动的,DRP1蛋白还促进了线粒体的解偶联。结论我们的数据表明,人脂肪细胞由白变到Brite依赖于线粒体的分子,形态和功能变化,这使英国/米色细胞能够进行生热作用。

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